Author:
Desta Mulugeta,Akuma Ayele,Minay Metadel,Yusuf Zekeria,Baye Kassa
Abstract
Background:
Soybean (Glycine max L.) is the most vital grain legume crop rich in protein and oil. The inoculation of rhizobia with soybean plays a very important role in increasing soil fertility via its contribution to biological nitrogen fixation.
Objective:
This study focuses on the evaluation of indigenous and commercial rhizobia on soybean nodulation and growth parameters.
Methodology:
Soil samples were collected from five districts for nodule trapping. The rhizobia were isolated using ‘plant induction following the standard procedures. The greenhouse experiments were arranged in a completed randomized design with three replications and two control units. The data were collected for plant height, nodule number, nodule dry weight, shoot dry weight, root length; root dry weight, total nitrogen and nitrogen-content.
Results:
The entire isolates were found gram-negative, without absorbing congo-red and did not grow on peptone glucose agar media. Slow grower isolates turned bromothymol blue with yeast extract mannitol agar medium into a moderately deep blue color but fast grower changed to yellow color. All isolates were tested on the sand induced nodule and were significantly superior to the negative control in terms of plant height, shoot dry weight, and nodule dry weight. The shoot dry weight of soybean rhizobial isolates on the sterilized sand experiment was ranging from 1.6 to 2.2g per plant and it was a highly significant correlation to the nodule number, nodule dry weight and root dry weight.
Conclusion:
The indigenous isolates were highly competent to all commercial rhizobia. This study encourages further evaluation of the field and molecular characteristics.
Publisher
Bentham Science Publishers Ltd.
Subject
Biomedical Engineering,Biochemistry,Bioengineering,Biophysics,Biotechnology
Reference29 articles.
1. Szpunar-Krok E, Wondołowska-Grabowska A, Bobrecka-Jamro D, Jańczak-Pieniążek M, Kotecki A, Kozak M.
Effect of nitrogen fertilisation and inoculation with bradyrhizobium japonicum on the fatty acid profile of soybean (glycine max (L.) merrill) seeds.
Agronomy (Basel)
2021;
11
(5)
: 941.
2. Yang L, Nie J, Xu C, Cao W.
Biological nitrogen fixation of chinese milk vetch (Astragalus sinicus L.) as affected by exogenous carbon and nitrogen input.
Symbiosis
2021;
85
(1)
: 69-77.
3. Ogutcu H, Algur Ö, Elkoca E, Kantar F.
The determination of symbiotic effectiveness of Rhizobium strains isolated from wild chickpeas collected from high altitudes in Erzurum.
Turk J Agric For
2008;
32
: 4.
4. Walangululu M, Shukuru B, Bamuleke K, Bashagaluke B, Angelani A, Baijukya F.
Response of introduced soybean varieties to inoculation with rhizobium in Sudan.
2014;
273-9.
5. Application Guideline for Rhizobial Biofertilizer Technologies
2018.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献